DOI QR코드

DOI QR Code

Risk Assessment of Integrated Leak Rate Test(ILRT) Extension for Korea Standard Nuclear Power Plant

한국표준형원전의 격납건물종합누설률 시험 주기연장에 대한 리스크 평가

  • Chi, Moon-Goo (Nuclear Engineering & Technology Institute, Korea Hydro & Nuclear Power Co., Ltd.) ;
  • Hwang, Seok-Won (Nuclear Engineering & Technology Institute, Korea Hydro & Nuclear Power Co., Ltd.) ;
  • Oh, Ji-Yong (Nuclear Engineering & Technology Institute, Korea Hydro & Nuclear Power Co., Ltd.)
  • 지문구 (한국수력원자력(주) 한수원중앙연구원) ;
  • 황석원 (한국수력원자력(주) 한수원중앙연구원) ;
  • 오지용 (한국수력원자력(주) 한수원중앙연구원)
  • Received : 2011.04.04
  • Accepted : 2011.09.30
  • Published : 2011.10.31

Abstract

An ILRT Interval for a nuclear power plant in Korea was extended from once in five years to once in ten years. Therefore, it is necessary to evaluate risk impact for ILRT interval extensions. In this paper, input data were generated for the reference plants, KSNP, using raw data such as meteorological data, population distribution data and source term data. And, using MACCS II code the risk impact assessment was performed based on the two methodologies of NUREG-1493 and NEI Interim Report. The risk impact derived from an ILRT interval extension was identified not to be significant. It is considered to apply this study and results to making an accident management plan and safety goal, and to the field of public acceptance.

Keywords

References

  1. 교과부 고시 2001-42호
  2. SNL, Code Manual for MACCS II Vol. 1, SAND97-0594, User's Guide, 1997.
  3. USNRC, Code Manual for MACCS II : Preprocessor Codes COMIDA2, FGRDCF, IDCF2, Vol. 2, NUREG/CR-6613, 1998.
  4. USNRC, Performance-Based Containment Leak Test Program, NUREG-1493, 1995.
  5. EPRI, Risk Impact Assessment of Revised Containment Leak Rate Testing Intervals, EPRI TR-104285, 1994.
  6. KHNP, 영광 3, 4호기 확률론적 안전성평가, 2004.
  7. 박창규 등, 확률론적 안전성평가, 브레인코리아, 2003.
  8. 서미로 등, 영광 1, 2호기 격납건물 종합누설률 시험 주기연장에 따른 위험도 평가, '05전력연-단027, TM.S01.P2005.027, 2005.
  9. 원자력안전기술원, 원자로시설의 변경허가신청에서의 리스크정보활용 일반요건에 관한 기술지침서, KINS/GT-N24, 2007.